MSc Finance
Cranfield University's MSc Finance program is designed to equip students with advan...
Cranfield
INTAKE: October
The MSc Computational Fluid Dynamics program at Cranfield University offers an in-depth study of fluid mechanics, numerical methods, and computational techniques.
Fluid Dynamics Fundamentals: Students gain a strong foundation in fluid dynamics principles, including fluid properties, governing equations, and boundary conditions.
Numerical Methods: The program focuses on numerical techniques used to solve complex fluid flow problems, such as finite difference, finite element, and finite volume methods.
Turbulence Modeling: Students study turbulence models and simulations to accurately predict turbulent flows in engineering applications.
CFD Software: The program provides hands-on experience with industry-standard CFD software packages, allowing students to analyze and solve practical engineering problems.
Mesh Generation: Students learn about mesh generation techniques to discretize complex geometries for CFD simulations.
Multiphase Flows: The program covers simulations involving multiple phases, such as gas-liquid interactions and solid-fluid interactions.
Cranfield
IELTS 6.5
£ 26580
Postgraduate Entry Requirements:
Students must provide:
Work experience: Some postgraduate courses may require relevant work experience in the field.
It is important to note that meeting the minimum entry requirements does not guarantee admission, as the university considers factors such as availability of places and competition for the program. Additionally, some courses may have higher entry requirements or additional selection criteria, such as interviews or portfolio submissions
Cranfield University offers a variety of scholarships and bursaries to help students fund their studies. These scholarships are open to both UK and international students and are awarded based on a variety of factors, such as academic merit, financial need, and professional experience.
It is important to note that eligibility criteria, application requirements, and award amounts vary for each scholarship and bursary.
Graduates of the MSc Computational Fluid Dynamics program have excellent career prospects in various industries, particularly in sectors dealing with fluid dynamics and simulations.
CFD Engineer: Graduates can work as CFD engineers, using computational methods to optimize designs and improve fluid flow performance.
Aerospace and Automotive Industries: Graduates may find opportunities in aerospace and automotive industries, optimizing aerodynamics and thermal management.
Energy and Environment Sector: Graduates can contribute to projects in the energy and environment sectors, such as wind turbine optimization and pollutant dispersion studies.
Research and Development: Graduates with a research interest can pursue careers in CFD research and development, exploring innovative solutions to fluid dynamics problems.
Consultancy Roles: Graduates may work as CFD consultants, providing expertise to various companies seeking fluid flow analysis.
Academia: Graduates interested in academia can pursue doctoral studies and contribute to CFD research in universities and research institutions.